FIELD
[0001] The present disclosure relates to gas turbine engines and, in particular, to combustor
and igniter configurations for gas turbine engines.
BACKGROUND
[0002] Gas turbine engines are required to operate efficiently during operation and flight.
These engines create a tremendous amount of force and generate high levels of heat.
As such, components of these engines are subjected to high levels of stress, temperature
and pressure. It is necessary to provide components that can withstand the demands
of a gas turbine engine. It is also desirable to provide components with increased
operating longevity.
[0003] FIG. 1 depicts a conventional configuration of a combustor 100 including an igniter
105 with the igniter tip 106 protruding into the combustor cavity 110. Many conventional
combustor and gas turbine engines include an igniter position with the igniter tip
106 protruding into the combustor cavity 110. This configuration can lead to deformation
of the igniter due to extreme temperatures within cavity 110. As a result, the igniter
105, and in particular the igniter tip 106, may deform over time or "mushroom" due
to the environment within cavity 110.
[0004] Some components of gas turbine engines, such as igniters, are designed to be line
replacement units (LRUs). Deformation of the igniter 105, and especially mushrooming
of igniter tip 106, may result in great difficulty when removal of igniter 105 is
needed. In some cases, igniter deformation will result in a complete overhaul of the
engine to remove and replace igniters at a great expense. Accordingly, there is a
desire to provide a configuration that allows for operation of a combustor and igniter
which overcomes the aforementioned drawbacks. There is also a desire to improve the
configuration of gas turbine engines and combustors.
[0005] EP 1975512 A2 discloses combustor configurations in which a tip portion of an igniter may be slightly
recessed, slightly protruding, or nominally flush with the inner surface of a liner.
BRIEF SUMMARY OF THE EMBODIMENTS
[0007] Viewed from one aspect the present invention provides a combustor for a gas turbine
engine according to claim 1.
[0008] Combustor and igniter configurations for gas turbine engines are disclosed herein.
Embodiment of combustor for a gas turbine engine are disclosed, the combustor including
a combustor shell enclosing a first area of free space and an igniter for the combustor
shell, the igniter including a distal end. The combustor also includes one or more
elements configured to retain the igniter and to interface with the combustor shell,
wherein the one or more elements define a second area of free space, and wherein the
igniter is retained within the second area of free space such that the distal end
of the igniter is recessed from the first area of free space. The first area of free
space is defined by the inner surface of the combustor shell and one or more liners
mounted to an interior of the combustor shell. The distal end of the igniter is angularly
offset from a boundary of the first area of free space at a non-zero angle up to 45
degrees.
[0009] Preferred embodiments of the invention are defined by the dependent claims.
[0010] Other aspects, features, and techniques will be apparent to one skilled in the relevant
art in view of the following detailed description of the embodiments.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The features, objects, and advantages of the present disclosure will become more
apparent from the detailed description set forth below when taken in conjunction with
the drawings in which like reference characters identify correspondingly throughout
and wherein:
FIG. 1 depicts a graphical representation of a conventional combustor configuration
for a gas turbine engine;
FIG. 2 depicts a cross-sectional representation of a combustor for a gas turbine engine
described for explanatory purposes.
FIGS. 3A - 3B depict cross-sectional representations of igniter configurations for
a gas turbine engine, FIG. 3A described for explanatory purposes and FIG. 3B according
to an embodiment of the invention; and
FIG. 4 depicts graphical representation of an igniter for a combustor of a gas turbine
engine according to one or more embodiments.
DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
Overview and Terminology
[0012] One aspect of this disclosure relates to configurations for an igniter relative to
a combustor according to one or more embodiments. In one embodiment, a configuration
for a combustor is provided including a combustor shell, igniter, and one or more
elements to support and/or position an igniter relative to a combustor cavity. A combustor
shell, igniter, and igniter support elements may be configured to allow for positioning
of an igniter which reduces the exposure of the igniter to hot gas flow.
[0013] As used herein, the terms "a" or "an" shall mean one or more than one. The term "plurality"
shall mean two or more than two. The term "another" is defined as a second or more.
The terms "including" and/or "having" are open ended (e.g., comprising). The term
"or" as used herein is to be interpreted as inclusive or meaning any one or any combination.
Therefore, "A, B or C" means "any of the following: A; B; C; A and B; A and C; B and
C; A, B and C". An exception to this definition will occur only when a combination
of elements, functions, steps or acts are in some way inherently mutually exclusive.
[0014] Reference throughout this document to "one embodiment", "certain embodiments", "an
embodiment", or similar term means that a particular feature, structure, or characteristic
described in connection with the embodiment is included in at least one embodiment.
Thus, the appearances of such phrases in various places throughout this specification
are not necessarily all referring to the same embodiment. Furthermore, the particular
features, structures, or characteristics may be combined in any suitable manner on
one or more embodiments without limitation.
Exemplary Embodiments
[0015] FIG. 2 depicts a cross-sectional representation of a combustor 200 described for
explanatory purposes. Combustor 200 includes a combustor shell 205, one or more elements
shown as support elements 215, and igniter 210. Igniter 210 may be retained relative
to combustor shell 205 and/or supported by support elements 215. The configuration
of combustor 200 may allow for positioning of an igniter relative to combustor shell
205 to prevent deformation of the igniter 210 and improve life-on-wing for igniters.
According to one arrangement, igniter 210 may be recessed from a boundary to reduce
high heat exposure of distal end 211. Recessing igniter 210 decreases structural deformities
to the igniter, decreases heat exposure, and can increase component efficiency by
reducing required parasitic cooling flow. Recessing igniter 210 can improve ignition
performance. Additionally, structural deformities of igniter 210 increase the cost
of repairs and maintenance of gas turbine engines.
[0016] Combustor shell 205 encloses a first area of free space 220 within the combustor
shell 205. The combustor shell 205 is at least one of an annular and sectional combustor
shell. According to one arrangement, the first area of free space 220 is defined by
the inner surface of the combustor shell 205 and one or more liners mounted to the
interior of the combustor shell.
[0017] Igniter 210 for combustor shell 205 may be mounted, by support elements 215, relative
to the combustor shell 205 to ignite fuel and air mixture within the combustor. Igniter
210 includes a distal end. The distal end may include one or more electrodes for ignition
of the gas flow path within the combustor shell 205. In one arrangement, the distal
end of the igniter 210 is a substantially flat surface including an electrode. Igniter
210 may be a cylindrically shaped device.
[0018] Combustor 200 includes support elements 215 configured to retain the igniter 210
and to interface with the combustor shell 205. Support element 215 defines a second
area of free space. In certain arrangements, support elements 215 extend into the
combustor shell 205. Support elements 215 may include one or more of an igniter tube,
and one or more support rings.
[0019] An enlarged view of the combustor shell 205 and support elements 215 is shown as
250 in FIG. 2. Combustor shell is shown with a liner 206. According to one or more
arrangements described for explanatory purposes, support elements 215 extend into
an opening with the combustor shell 205. Support elements 215 define a second area
of free space 221. In certain arrangements, first area of free space 220 and second
area of free space 221 do not overlap. Igniter 210 is retained within the second area
of free space 221 such that the distal end 211 of the igniter 210 is recessed from
the first area of free space 220. Recessing the igniter 210 can remove the distal
end 211 out of the gas flow path such that the area of the igniter 210 that is exposed
to high gas path temperatures is reduced or minimized.
[0020] According to one arrangement, the boundary between first area of free space 220 and
second area of free space 221 is shown as 222. According to another arrangement, the
face of igniter 210 is shown recessed to position 223, wherein position 223 is offset
and/or recessed from first area of free space 220. In addition, the face of igniter
210 is shown recessed to positioned 223, wherein position 223 is offset and/or recessed
from boundary 222.
[0021] In one arrangement, combustor 200 may allow for positioning and/or placement of an
igniter 210 relative to a first area of free space 220 within combustor shell 205.
Support elements 215 can retain igniter 210 within the second area of free space such
that the distal end of the igniter is recessed from the first area of free space 220.
As such, recessed can relate to a fixed distance of displacement from the first area
of free space 220. In certain arrangements, the first area of free space 220 is separate
from the second area of free space. The distal end of the igniter may be recessed
by at least one of a parallel and angled offset from the first area of free space
220.
[0022] According to another arrangement, the igniter is offset from a boundary between the
first area of free space and the second area of free space by a predetermined distance.
As such, the distal end of the igniter 210 is removed from a direct path of gas flow
within the combustor
[0023] According to another arrangement, combustor 200 may allow for positioning and/or
placement of an igniter 210 relative to a boundary between first area of free space
220 and support elements 215. Igniter 210 may be recessed a fixed distance of displacement
from the boundary 222 to position 223. Recess plane 223 is offset from the boundary
222 between by a predetermined distance. In that fashion, the distal end 211 of the
igniter 210 is recessed by at least one of a parallel and angled offset from the boundary
222.
[0024] Support elements 215 can retain igniter 210 within the second area of free space
such that the distal end of the igniter is recessed from boundary 222. As such, recessed
can relate to a fixed distance of displacement from the first area of free space 220.
In certain arrangements, the first area of free space 220 is separate from the second
area of free space 221. The distal end of the igniter 210 may be recessed by at least
one of a parallel and angled offset from the boundary 222.
[0025] According to another arrangement, igniter 210 is offset from a boundary between the
first area of free space and the second area of free space by a predetermined distance.
As such, the distal end of the igniter 210 is removed from a direct path of gas flow
within the combustor 200. In certain arrangements, boundary 222 is a plane between
the first area of free space 220 and the area defined by the support elements 215.
[0026] According to one arrangement, offset of igniter 210 from first area of free space
220, or boundary 222, relates to a set point for positioning igniter 210. In certain
arrangements, igniter 210 is offset a fixed distance of 0.036 inches (around 0.91
mm). In other arrangements, igniter 210 is offset a fixed distance within the range
of 0.015 to 0.060 inches (around 0.38 mm to 1.52 mm). In yet another arrangement,
igniter 210 is offset a fixed distance within a given tolerance. By way of example,
the offset of igniter 210 may vary during installation, based on the installer or
other factors. Accordingly, support elements 215 may be configured to allow for positioning
to an offset, and/or one or more positions within a tolerance of the fixed distance.
[0027] FIGS. 3A - 3B depict cross-sectional representations of igniter configurations for
a gas turbine engine, FIG. 3A for explanatory purposes and FIG. 3B according to an
embodiment of the invention.
[0028] FIG. 3A depicts a cross-sectional representation of igniter configuration 300 for
a gas turbine engine according for combustor shell 302, igniter 304, and support elements
303. Combustor shell 302 encloses a first area of free space, shown by 307. Igniter
304 for the combustor shell 302 includes a distal end 306. Distal end 306 of igniter
304 is a substantially flat surface with an electrode. According to one embodiment,
distal end 306 of igniter 304 is offset from the first area of free space a fixed
distance within the range of 0.015 to 0.055 inches (around 0.38 mm to 1.40 mm).
[0029] Support elements 303 are configured to retain the igniter 304 and interface with
the combustor shell 302. Support elements 303 can extend into an opening with the
combustor shell 302. Support elements 303 define a second area of free space 308.
First area of free space 307 and second area of free space 308 do not overlap. Igniter
304 is retained within the second area of free space 308 such that the distal end
306 of the igniter 304 is recessed from the first area of free space 307. In another
arrangement, the support elements 303 define a boundary 323 between the combustor
shell 302 and support elements 303. Boundary 323 prevents overlapping of the combustor
shell 302 and igniter tube 303. Igniter 304 is retained within the igniter tube 303
such that the distal end 306 of the igniter 304 is recessed from the boundary 323.
Recessed is offset from the boundary 323 a predetermined distance. Recessed can also
be near but out of the gas flow. Near but out of the gas flow can be not exposed to
a high temperature but close enough to allow ignition of combustible gasses.
[0030] FIG. 3B depicts a cross-sectional representation of a combustor 350 for a gas turbine
engine according to an embodiment. Igniter 304 is retained within the igniter tube
303 such that the distal end 306 of the igniter 304 is recessed from the boundary
323. Recessed is offset from the boundary 323 a predetermined distance. Recessed can
also be near but out of the gas flow. Igniter 210 recessed can also be where distal
end 306 surface is positioned at a predetermined angle 330. According to one embodiment,
distal end 306 of igniter 304 is angularly offset from the boundary within the range
of up to 45 degrees.
[0031] FIG. 4 depicts graphical representation of an igniter for a combustor of a gas turbine
engine according to one or more embodiments. Igniter 400 includes a distal end 445.
Positioning igniter 400 in a recessed position reduces extreme high heat exposure
of distal end 445 and can remove the igniter 400 from the direct flow path of the
fuel and gas mixture of combustor. Reduced exposure of distal tip 445 to extreme high
temperature causes less structural deformities 441 and increased operating longevity.
[0032] While this disclosure has been particularly shown and described with references to
exemplary embodiments thereof, it will be understood by those skilled in the art that
various changes in form and details may be made therein without departing from the
scope of the claimed embodiments.
1. A combustor for a gas turbine engine, the combustor comprising:
a combustor shell (205;302) enclosing a first area of free space (220;307);
an igniter (210;304) for the combustor shell (205;302), the igniter including a distal
end 211;306) at a radially inward end of the igniter (210;304); and
one or more elements (215;303) configured to retain the igniter (210;304) and to interface
with the combustor shell (205;302), wherein the one or more elements define a second
area of free space (221;308), and wherein the igniter (210;304) is retained within
the second area of free space (221;308) such that the distal end 211;306) of the igniter
(210;304) is recessed from the first area of free space (220;307)
characterized in that;
the distal end (211 ;306) of the igniter (210;304) is angularly offset from a boundary
(323) of the first area of free space (220;307) at a non-zero angle up to 45 degrees,
wherein said boundary is defined between the shell (302) and the elements (304).
2. The combustor of claim 1, wherein the igniter (210;304) is recessed from the first
area of free space (220;307) by a fixed distance.
3. The combustor of claim 1 or claim 2, wherein the first area of free space (220;307)
is separate from the second area of free space (221;308).
4. The combustor of any of claims 1 to 3, wherein the igniter (210;304) is offset from
a boundary (222;323) between the first area of free space (220;307) and the second
area of free space (221;308) by a predetermined distance.
5. The combustor of any preceding claim, wherein the distal end 211;306) of the igniter
(210;304) is removed from a direct path of gas flow within the combustor,
6. The combustor of any preceding claim, wherein the combustor shell (205;302) is at
least one of an annular and sectional combustor shell.
1. Brennkammer für ein Gasturbinentriebwerk, wobei die Brennkammer Folgendes umfasst:
eine Brennkammerschale (205; 302), die einen ersten Bereich von freiem Raum (220;
307) umschließt;
einen Zünder (210; 304) für die Brennkammerschale (205; 302), wobei der Zünder ein
distales Ende (211; 306) an einem radial nach innen gerichteten Ende des Zünders (210;
304) aufweist; und
ein oder mehrere Elemente (215; 303), die dazu konfiguriert sind, den Zünder (210;
304) zu halten und sich mit der Brennkammerschale (205; 302) zu verbinden, wobei das
eine oder die mehreren Elemente einen zweiten Bereich von freiem Raum (221; 308) definieren
und wobei der Zünder (210; 304) derart innerhalb des zweiten Bereichs von freiem Raum
(221; 308) gehalten wird, dass das distale Ende (211; 306) des Zünders (210; 304)
aus dem ersten Bereich von freiem Raum (220; 307) ausgespart ist, dadurch gekennzeichnet, dass
das distale Ende (211; 306) des Zünders (210; 304) von einer Begrenzung (323) des
ersten Bereichs von freiem Raum (220; 307) in einem Winkel ungleich Null von bis zu
45 Grad winkelversetzt ist, wobei die Begrenzung zwischen der Schale (302) und den
Elementen (304) definiert ist.
2. Brennkammer nach Anspruch 1, wobei der Zünder (210; 304) durch einen festen Abstand
aus dem ersten Bereich von freiem Raum (220; 307) ausgespart ist.
3. Brennkammer nach Anspruch 1 oder Anspruch 2, wobei der erste Bereich von freiem Raum
(220; 307) von dem zweiten Bereich von freiem Raum (221; 308) getrennt ist.
4. Brennkammer nach einem der Ansprüche 1 bis 3, wobei der Zünder (210; 304) zwischen
dem ersten Bereich von freiem Raum (220; 307) und dem zweiten Bereich von freiem Raum
(221; 308) durch einen vorbestimmten Abstand von einer Begrenzung (222; 323) versetzt
ist.
5. Brennkammer nach einem der vorstehenden Ansprüche, wobei das distale Ende (211; 306)
des Zünders (210; 304) aus einem direkten Gasströmungspfad innerhalb der Brennkammer
entfernt ist.
6. Brennkammer nach einem der vorstehenden Ansprüche, wobei die Brennkammerschale (205;
302) mindestens eine von einer ringförmigen oder Teilbrennkammerschale ist.
1. Chambre de combustion pour un moteur à turbine à gaz, la chambre de combustion comprenant
:
une enveloppe de chambre de combustion (205 ; 302) renfermant une première zone d'espace
libre (220 ; 307) ;
un allumeur (210 ; 304) destiné à l'enveloppe de chambre de combustion (205 ; 302),
l'allumeur comportant une extrémité distale (211 ; 306) au niveau d'une extrémité
radialement interne de l'allumeur (210 ; 304) ; et
un ou plusieurs éléments (215 ; 303) configurés pour retenir l'allumeur (210 ; 304)
et pour servir d'interface avec l'enveloppe de chambre de combustion (205 ; 302),
dans laquelle les un ou plusieurs éléments définissent une seconde zone d'espace libre
(221 ; 308), et dans laquelle l'allumeur (210 ; 304) est retenu à l'intérieur de la
seconde zone d'espace libre (221 ; 308) de sorte que l'extrémité distale (211 ; 306)
de l'allumeur (210 ; 304) est en retrait par rapport à la première zone d'espace libre
(220 ; 307), caractérisée en ce que ;
l'extrémité distale (211 ; 306) de l'allumeur (210 ; 304) est décalée angulairement
par rapport à un bord (323) de la première zone d'espace libre (220 ; 307) selon un
angle non nul allant jusqu'à 45 degrés, dans laquelle ledit bord est défini entre
l'enveloppe (302) et les éléments (304).
2. Chambre de combustion selon la revendication 1, dans laquelle l'allumeur (210 ; 304)
est en retrait par rapport à la première zone d'espace libre (220 ; 307) d'une distance
fixe.
3. Chambre de combustion selon la revendication 1 ou la revendication 2, dans laquelle
la première zone d'espace libre (220 ; 307) est séparée de la seconde zone d'espace
libre (221 ; 308) .
4. Chambre de combustion selon l'une quelconque des revendications 1 à 3, dans laquelle
l'allumeur (210 ; 304) est décalé par rapport à un bord (222 ; 323) entre la première
zone d'espace libre (220 ; 307) et la seconde zone d'espace libre (221 ; 308) d'une
distance prédéterminée.
5. Chambre de combustion selon une quelconque revendication précédente, dans laquelle
l'extrémité distale (211 ; 306) de l'allumeur (210 ; 304) est retirée d'un trajet
direct d'écoulement de gaz à l'intérieur de la chambre de combustion.
6. Chambre de combustion selon une quelconque revendication précédente, dans laquelle
l'enveloppe de chambre de combustion (205 ; 302) est au moins l'une d'une enveloppe
de chambre de combustion annulaire et en coupe.